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成年大鼠中对皮肤进行适宜和不适宜神经支配的初级感觉神经元的生理特性。

Physiological properties of primary sensory neurons appropriately and inappropriately innervating skin in the adult rat.

作者信息

Lewin G R, McMahon S B

机构信息

United Medical School, London, United Kingdom.

出版信息

J Neurophysiol. 1991 Oct;66(4):1205-17. doi: 10.1152/jn.1991.66.4.1205.

Abstract
  1. We have studied the physiology of sensory neurons innervating skin of the rat hindlimb, in three groups of animals: 1) normal animals; 2) animals in which the sural nerve (Sn) had regenerated to its original cutaneous target; and 3) animals in which the gastrocnemius muscle nerve (Gn) had previously been cut and cross anastomosed with the distal stump of the cut Sn so that its axons regenerated to a foreign target, skin. 2. Single-unit recordings were made from 222 afferents in normal, intact animals. They had conduction velocities of 0.5-53.1 m/s. The conduction velocity distribution had distinct peaks at approximately 37.5, 2.5, and 1.25 m/s, presumably corresponding to A alpha beta-, A delta-, and C-fiber populations. Eighty-two percent of the characterized myelinated fibers had low-threshold mechanosensitive receptive fields, whereas 16% were high threshold, and only 2% appeared to have no receptive field. The very large majority of low-threshold mechanosensitive receptive fields (87%) were rapidly adapting hair follicle afferents. 3. In animals with regenerated Sn, 308 afferents were recorded with conduction velocities of 0.4-58.8 m/s. However, the mean conduction velocity was lower than in control animals (P less than 0.05), and only one peak, at 27.5 m/s, was apparent for myelinated fibers. Eighty-six percent of myelinated fibers were low-threshold mechanosensitive afferents, 8.5% were high-threshold mechanoreceptors (HTMRs), and 5.5% appeared to have no receptive fields. Fewer low-threshold mechanoreceptors (LTMRs; compared with controls) were activated by hair movement (63 vs. 87%). Most of the remainder appeared to be field receptors (which were therefore more commonly observed here than in normal animals). 4. In animals in which the Gn had regenerated to skin, 430 afferents were recorded. These had conduction velocities ranging from 0.6 to 71.4 m/s, and again only one peak was apparent in the myelinated conduction velocity histogram, at approximately 17.5 m/s. Of the myelinated fibers, 79% had low-threshold mechanosensitive receptive fields in skin and 10% high-threshold mechanosensitive receptive fields. The remaining 11% apparently had no receptive field (cf. 5.5% in regenerated Sn). In contrast to normal or regrown sural afferents, only 58% of low-threshold gastrocnemius afferents in skin were rapidly adapting. Of the 42% slowly adapting afferents, many surprisingly responded to hair movement. Thus some gastrocnemius afferents seemed to have retained the adaptation properties characteristic of muscle afferents. Also surprisingly, given that the Gn contains fewer fibers than the Sn, receptive-field areas were not significantly different from regrown or normal sural fibers.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们在三组动物中研究了支配大鼠后肢皮肤的感觉神经元的生理学:1)正常动物;2)腓肠神经(Sn)已再生至其原始皮肤靶点的动物;3)先前已切断腓肠肌神经(Gn)并将其与切断的Sn的远端残端进行交叉吻合,使其轴突再生至异源靶点皮肤的动物。2. 对正常、完整动物的222条传入神经进行了单单位记录。它们的传导速度为0.5 - 53.1米/秒。传导速度分布在约37.5、2.5和1.25米/秒处有明显峰值,可能分别对应Aαβ -、Aδ - 和C纤维群体。82%的已鉴定有髓纤维具有低阈值机械敏感感受野,而16%为高阈值,只有2%似乎没有感受野。绝大多数低阈值机械敏感感受野(87%)是快速适应的毛囊传入神经。3. 在Sn再生的动物中,记录了308条传入神经,传导速度为0.4 - 58.8米/秒。然而,平均传导速度低于对照动物(P小于0.05),有髓纤维仅在27.5米/秒处有一个明显峰值。86%的有髓纤维是低阈值机械敏感传入神经,8.5%是高阈值机械感受器(HTMRs),5.5%似乎没有感受野。毛发运动激活的低阈值机械感受器(LTMRs;与对照相比)较少(63%对87%)。其余大多数似乎是场感受器(因此在这里比在正常动物中更常见)。4. 在Gn再生至皮肤的动物中,记录了430条传入神经。它们的传导速度范围为0.6至71.4米/秒,有髓传导速度直方图中同样仅在约17.5米/秒处有一个明显峰值。在有髓纤维中,79%在皮肤中有低阈值机械敏感感受野,10%有高阈值机械敏感感受野。其余11%显然没有感受野(再生Sn中为5.5%)。与正常或再生的腓肠神经传入神经相比,皮肤中低阈值腓肠肌传入神经只有58%是快速适应的。在42%的缓慢适应传入神经中,许多令人惊讶地对毛发运动有反应。因此,一些腓肠肌传入神经似乎保留了肌肉传入神经特有的适应特性。同样令人惊讶的是,鉴于Gn包含的纤维比Sn少,感受野面积与再生或正常腓肠神经纤维没有显著差异。(摘要截断于400字)

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